Design aspects of thyristor protected series capacitor systems (TPSC)

L. Kirschner, J. Bohn, K. Sadek
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Abstract

Summary form only given as follows. Series capacitors in transmission lines are protected against overvoltages by employing different techniques. Arc-gaps with damping circuits have been used in the past with limited success due to their poor maintenance, inaccurate firing and arc erosion. Nowadays, MOV arresters are widely used to limit the transient overvoltage across the capacitors together with the mechanical by-pass switch that is employed only in case of permanent faults. This, however, may lead in many cases to huge amounts of MOV energy ratings that also need to be dissipated. This, in turn, results in large housing requirements and delays due to long cooling down times. With the advances achieved in thyristor technology, it is now possible to economically provide the same level of capacitor protection with smaller housing and fast cooling down times. The scheme can also be upgraded to full TCSC operation at a later stage. The paper presents the effect of the different fault strategies on the design aspects of the LTT thyristor valve. The novel features of the scheme are illustrated in light of the installation in the SCE transmission system at Vincent.
晶闸管保护串联电容系统(TPSC)的设计要点
摘要形式只提供如下。传输线中的串联电容器通过采用不同的技术来防止过电压。在过去,由于缺乏维护、点火不准确和电弧侵蚀等原因,使用了带有阻尼电路的弧隙,但收效甚微。目前,广泛采用MOV避雷器和机械式旁路开关来限制电容器间的瞬态过电压,而机械式旁路开关只有在发生永久性故障时才会使用。然而,在许多情况下,这可能会导致大量的MOV能量额定值也需要消散。这反过来又导致了大量的住房需求和由于长时间冷却而导致的延迟。随着晶闸管技术的进步,现在可以用更小的外壳和更快的冷却时间经济地提供相同水平的电容器保护。该计划亦可在稍后阶段升级为全面营运。本文介绍了不同故障策略对LTT晶闸管阀设计的影响。该方案的新特点是在文森特安装的SCE传输系统的光。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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